/**************************************************************************/
/*  path_3d_editor_plugin.h                                               */
/**************************************************************************/
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/* Copyright (c) 2014-present Godot Engine contributors (see AUTHORS.md). */
/* Copyright (c) 2007-2014 Juan Linietsky, Ariel Manzur.                  */
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#pragma once

#include "editor/plugins/editor_plugin.h"
#include "editor/scene/3d/node_3d_editor_gizmos.h"
#include "scene/3d/camera_3d.h"
#include "scene/3d/path_3d.h"

class HBoxContainer;
class MenuButton;
class ConfirmationDialog;

class Path3DGizmo : public EditorNode3DGizmo {
	GDCLASS(Path3DGizmo, EditorNode3DGizmo);

	// Map handle id to control point id and handle type.
	enum HandleType {
		HANDLE_TYPE_IN,
		HANDLE_TYPE_OUT,
		HANDLE_TYPE_TILT,
	};

	struct HandleInfo {
		int point_idx; // Index of control point.
		HandleType type; // Type of this handle.
	};

	Path3D *path = nullptr;
	Ref<StandardMaterial3D> debug_material;
	mutable Vector3 original;
	mutable float orig_in_length;
	mutable float orig_out_length;
	mutable float disk_size = 0.8;

	// Index that should have swapped control points for achieving an outwards curve.
	int swapped_control_points_idx = -1;
	bool control_points_overlapped = false;

	// Cache information of secondary handles.
	Vector<HandleInfo> _secondary_handles_info;

	void _update_transform_gizmo();

public:
	virtual String get_handle_name(int p_id, bool p_secondary) const override;
	virtual Variant get_handle_value(int p_id, bool p_secondary) const override;
	virtual void set_handle(int p_id, bool p_secondary, Camera3D *p_camera, const Point2 &p_point) override;
	virtual void commit_handle(int p_id, bool p_secondary, const Variant &p_restore, bool p_cancel = false) override;

	virtual void redraw() override;
	Path3DGizmo(Path3D *p_path = nullptr, float p_disk_size = 0.8);
};

class Path3DGizmoPlugin : public EditorNode3DGizmoPlugin {
	GDCLASS(Path3DGizmoPlugin, EditorNode3DGizmoPlugin);

	float disk_size = 0.8;

	// Locking basis is meant to ensure a predictable behavior during translation of the curve points in "local space transform mode".
	// Without the locking, the gizmo/point, in "local space transform mode", wouldn't follow a straight path and would curve and twitch in an unpredictable way.
	HashMap<int, Basis> transformation_locked_basis;

protected:
	Ref<EditorNode3DGizmo> create_gizmo(Node3D *p_spatial) override;

public:
	virtual bool has_gizmo(Node3D *p_spatial) override;
	String get_gizmo_name() const override;

	virtual void redraw(EditorNode3DGizmo *p_gizmo) override;

	virtual int subgizmos_intersect_ray(const EditorNode3DGizmo *p_gizmo, Camera3D *p_camera, const Vector2 &p_point) const override;
	virtual Vector<int> subgizmos_intersect_frustum(const EditorNode3DGizmo *p_gizmo, const Camera3D *p_camera, const Vector<Plane> &p_frustum) const override;
	virtual Transform3D get_subgizmo_transform(const EditorNode3DGizmo *p_gizmo, int p_id) const override;
	virtual void set_subgizmo_transform(const EditorNode3DGizmo *p_gizmo, int p_id, Transform3D p_transform) override;
	virtual void commit_subgizmos(const EditorNode3DGizmo *p_gizmo, const Vector<int> &p_ids, const Vector<Transform3D> &p_restore, bool p_cancel = false) override;

	int get_priority() const override;
	Path3DGizmoPlugin(float p_disk_size);
};

class Path3DEditorPlugin : public EditorPlugin {
	GDCLASS(Path3DEditorPlugin, EditorPlugin);

	friend class Path3DGizmo;
	friend class Path3DGizmoPlugin;

	Ref<Path3DGizmoPlugin> path_3d_gizmo_plugin;

	HBoxContainer *topmenu_bar = nullptr;

	HBoxContainer *toolbar = nullptr;
	Button *curve_create = nullptr;
	Button *curve_edit = nullptr;
	Button *curve_edit_curve = nullptr;
	Button *curve_edit_tilt = nullptr;
	Button *curve_del = nullptr;
	Button *curve_closed = nullptr;
	Button *curve_clear_points = nullptr;
	MenuButton *handle_menu = nullptr;

	Button *create_curve_button = nullptr;
	ConfirmationDialog *clear_points_dialog = nullptr;

	float disk_size = 0.8;

	enum Mode {
		MODE_CREATE,
		MODE_EDIT,
		MODE_EDIT_CURVE,
		MODE_EDIT_TILT,
		MODE_DELETE,
		ACTION_CLOSE
	};

	Path3D *path = nullptr;

	void _update_theme();
	void _update_toolbar();

	void _mode_changed(int p_mode);
	void _toggle_closed_curve();
	void _handle_option_pressed(int p_option);
	bool handle_clicked = false;
	bool mirror_handle_angle = true;
	bool mirror_handle_length = true;

	void _create_curve();
	void _confirm_clear_points();
	void _clear_points();
	void _clear_curve_points();
	void _restore_curve_points(const PackedVector3Array &p_points);

	enum HandleOption {
		HANDLE_OPTION_ANGLE,
		HANDLE_OPTION_LENGTH
	};

protected:
	static void _bind_methods();

public:
	Path3D *get_edited_path() { return path; }

	inline static Path3DEditorPlugin *singleton = nullptr;
	virtual EditorPlugin::AfterGUIInput forward_3d_gui_input(Camera3D *p_camera, const Ref<InputEvent> &p_event) override;

	virtual String get_plugin_name() const override { return "Path3D"; }
	bool has_main_screen() const override { return false; }
	virtual void edit(Object *p_object) override;
	virtual bool handles(Object *p_object) const override;
	virtual void make_visible(bool p_visible) override;

	bool mirror_angle_enabled() { return mirror_handle_angle; }
	bool mirror_length_enabled() { return mirror_handle_length; }
	bool is_handle_clicked() { return handle_clicked; }
	void set_handle_clicked(bool clicked) { handle_clicked = clicked; }

	Path3DEditorPlugin();
};
